US8730539B2 - Image reading apparatus having auto document feeder - Google Patents
Image reading apparatus having auto document feeder Download PDFInfo
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- US8730539B2 US8730539B2 US11/643,987 US64398706A US8730539B2 US 8730539 B2 US8730539 B2 US 8730539B2 US 64398706 A US64398706 A US 64398706A US 8730539 B2 US8730539 B2 US 8730539B2
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- 238000011144 upstream manufacturing Methods 0.000 claims description 22
- 230000001360 synchronised effect Effects 0.000 claims description 9
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- 239000011521 glass Substances 0.000 description 21
- 230000008901 benefit Effects 0.000 description 3
- 230000001678 irradiating effect Effects 0.000 description 3
- 230000003287 optical effect Effects 0.000 description 3
- 230000007423 decrease Effects 0.000 description 2
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- 230000008021 deposition Effects 0.000 description 1
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- 239000000463 material Substances 0.000 description 1
- 239000000843 powder Substances 0.000 description 1
- 238000004904 shortening Methods 0.000 description 1
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Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00567—Handling of original or reproduction media, e.g. cutting, separating, stacking
- H04N1/0057—Conveying sheets before or after scanning
- H04N1/00572—Conveying sheets before or after scanning with refeeding for double-sided scanning, e.g. using one scanning head for both sides of a sheet
-
- E—FIXED CONSTRUCTIONS
- E06—DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
- E06B—FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
- E06B9/00—Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
- E06B9/24—Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
- E06B9/40—Roller blinds
- E06B9/42—Parts or details of roller blinds, e.g. suspension devices, blind boxes
- E06B9/50—Bearings specially adapted therefor
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00567—Handling of original or reproduction media, e.g. cutting, separating, stacking
- H04N1/0057—Conveying sheets before or after scanning
- H04N1/00572—Conveying sheets before or after scanning with refeeding for double-sided scanning, e.g. using one scanning head for both sides of a sheet
- H04N1/00575—Inverting the sheet prior to refeeding
- H04N1/00578—Inverting the sheet prior to refeeding using at least part of a loop, e.g. using a return loop
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00567—Handling of original or reproduction media, e.g. cutting, separating, stacking
- H04N1/0057—Conveying sheets before or after scanning
- H04N1/00572—Conveying sheets before or after scanning with refeeding for double-sided scanning, e.g. using one scanning head for both sides of a sheet
- H04N1/00575—Inverting the sheet prior to refeeding
- H04N1/0058—Inverting the sheet prior to refeeding using at least one dead-end path, e.g. using a sheet ejection path
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00567—Handling of original or reproduction media, e.g. cutting, separating, stacking
- H04N1/0057—Conveying sheets before or after scanning
- H04N1/00599—Using specific components
- H04N1/00602—Feed rollers
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00567—Handling of original or reproduction media, e.g. cutting, separating, stacking
- H04N1/0057—Conveying sheets before or after scanning
- H04N1/00599—Using specific components
- H04N1/00612—Path switches
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N1/00—Scanning, transmission or reproduction of documents or the like, e.g. facsimile transmission; Details thereof
- H04N1/00567—Handling of original or reproduction media, e.g. cutting, separating, stacking
- H04N1/0057—Conveying sheets before or after scanning
- H04N1/00599—Using specific components
- H04N1/00615—Guiding elements, e.g. plates
-
- E—FIXED CONSTRUCTIONS
- E06—DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
- E06B—FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
- E06B9/00—Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
- E06B9/56—Operating, guiding or securing devices or arrangements for roll-type closures; Spring drums; Tape drums; Counterweighting arrangements therefor
- E06B9/78—Operating, guiding or securing devices or arrangements for roll-type closures; Spring drums; Tape drums; Counterweighting arrangements therefor for direct manual operation, e.g. by tassels, by handles
- E06B2009/785—Operating, guiding or securing devices or arrangements for roll-type closures; Spring drums; Tape drums; Counterweighting arrangements therefor for direct manual operation, e.g. by tassels, by handles by belts, straps, bands, tapes, cords, tassels
Definitions
- aspects of the present invention relate to an image reading apparatus having an auto document feeder, and more particularly, to an image reading apparatus having an auto document feeder and which reads an image while a piece of paper is being conveyed.
- image reading apparatuses read an image recorded on paper by irradiating light thereon. Such image reading apparatuses may be scanners, facsimiles, or multi-function printers.
- An image reading apparatus includes a scanning module for reading an image printed on paper. The scanning module reads the image printed on paper in the form of an optical signal, by irradiating light on the paper. The scanning module converts the optical signal into an electrical signal sent that is sent to a signal processing module included in the image reading apparatus.
- a flat-bed type image reading apparatus the scanning module is moved.
- a sheet-feed type image reading apparatus the paper is moved.
- ADF auto document feeder
- the hybrid type image reading apparatus includes a glass plate on which the paper is placed, and a scanning module which is located at the rear side of the glass plate.
- the scanning module includes a light scanning unit which irradiates light onto the paper, and an image sensor which converts an optical signal obtained by reading the image from the paper into an electrical signal.
- An auto document feeder included in the hybrid type image reading apparatus is located at the upper side of the glass plate, and conveys the paper to the scanning module.
- the scanning module is located at the rear side of the glass plate in a fixed state, and reads the image from the paper being conveyed.
- FIG. 1 is a side cross-sectional view of a conventional auto document feeder (ADF).
- ADF auto document feeder
- a duplex ADF includes a feeding tray 81 , a pick-up roller 82 , a returning roller 83 , first and second feed rollers 84 and 87 , an adhering member 85 , a scanning module 86 , a discharging roller 88 , and a discharging tray 89 .
- Papers S 1 and S 2 are loaded on the feeding tray 81 .
- the pick-up roller 82 picks up the papers S 1 and S 2 loaded on the feeding tray 81 .
- the first feed roller 84 is located upstream of the scanning module 86 , and conveys the papers S 1 and S 2 , which are conveyed from the pick-up roller 82 , to the scanning module 86 .
- the scanning module 86 faces the adhering member 85 , and the papers S 1 and S 2 pass between the scanning module 86 and the adhering member 85 when an image is read from the papers S 1 and S 2 .
- the second feed roller 87 is located downstream of the scanning module 86 , and conveys the papers S 1 and S 2 to the discharging roller 88 , after the papers S 1 and S 2 have passed the scanning module 86 .
- the discharging roller 88 discharges the papers S 1 and S 2 , conveyed from the second feed roller 87 , to the discharging tray 89 .
- the discharged papers S 1 and S 2 are loaded on the discharging tray 89 .
- the papers S 1 and S 2 are not completely discharged out of the discharging tray 89 , and one portion of the papers S 1 and S 2 is still held at the discharging roller 88 .
- the discharging roller 88 rotates in reverse to convey the papers S 1 and S 2 towards the returning roller 83 .
- the returning roller 83 returns the papers S 1 and S 2 to a point upstream of the scanning module 86 .
- the papers S 1 and S 2 each have a first side P 1 and a second side P 2 . As shown in FIG. 1 , the papers S 1 and S 2 are loaded on the feeding tray 81 , where the first side P 1 is the upper side. When the two papers S 1 and S 2 are loaded on the feeding tray 81 , the paper S 2 is loaded first with the second side P 2 facing the feeding tray 81 and the first side P 1 facing the second side P 2 of the paper S 1 loaded on top of the paper S 2 .
- the papers S 1 and S 2 are discharged out of the ADF after reading is completed, the papers S 1 and S 2 are collated and loaded on the discharging tray 89 with the first side P 1 of the paper S 1 facing the discharging tray 89 and the second side S 2 facing the first side P 1 of the paper S 2 loaded on top of the paper S 1 . If the papers S 1 and S 2 are loaded on the discharging tray 89 in a different order, a user has to collate the papers S 1 and S 2 again, which is inconvenient.
- the papers S 1 and S 2 are conveyed along different paths depending on which mode is selected from a simplex reading mode, wherein the first sides P 1 of the papers S 1 and S 2 are read, and a duplex reading mode, wherein the first and the second sides P 1 and P 2 of the papers S 1 and S 2 are read.
- a simplex reading mode wherein the first sides P 1 of the papers S 1 and S 2 are read
- a duplex reading mode wherein the first and the second sides P 1 and P 2 of the papers S 1 and S 2 are read.
- the single-sided (i.e., simplex) reading mode is selected, the papers S 1 and S 2 are conveyed along the feeding tray 81 , the pick-up roller 82 , the first feed roller 84 , the scanning module 86 , the second feed roller 87 , the discharging roller 88 , and the discharging tray 89 , in this order.
- the papers S 1 and S 2 are collated and loaded on the discharging tray 89 .
- the papers S 1 and S 2 are conveyed along the feeding tray 81 , the pick-up roller 82 , the first feed roller 84 , the scanning module 86 , the second feed roller 87 , and the discharging roller 88 , in this order, and thereafter the first sides P 1 of the papers S 1 and S 2 are read.
- the discharging roller 88 rotates in reverse to convey the papers S 1 and S 2 towards the returning roller 83 .
- the papers S 1 and S 2 are conveyed along the discharging roller 88 , the returning roller 83 , the first feed roller 84 , the scanning module 86 , the second feed roller 87 , and the discharging roller 88 , in this order, and thereafter the second side P 2 is read.
- the papers S 1 and S 2 are reversely collated.
- the papers S 1 and S 2 are re-conveyed along the discharging roller 88 , the returning roller 83 , the first feed roller 84 , the scanning module 86 , the second feed roller 87 , and the discharging roller 88 , in this order.
- the scanning module 86 does not operate, and the papers S 1 and S 2 only are conveyed for collating.
- reading efficiency significantly decreases because the papers S 1 and S 2 are re-conveyed only to collate the papers S 1 and S 2 .
- the reading efficiency is defined as a ratio of the number of papers S 1 and S 2 discharged per unit hour in the duplex reading mode to the number of papers S 1 and S 2 discharged per unit hour in the simplex reading mode.
- the second paper S 2 is picked up after the first paper S 1 is completely discharged, and then conveying is carried out along the depicted conveying path.
- the conveying length in the duplex reading mode is about three times of that in the single-sided reading mode. If simplex reading is performed at a speed of 60 papers per minute (PPM)(that is, 60 sheets of paper are discharged for one minute) then, duplex reading is performed at the speed of about 20 PPM (that is, 20 sheets of paper are discharged for one minute) and as a result, the duplex reading efficiency is merely about 30%.
- aspects of the present invention provide an image reading apparatus having an auto document feeder which can be used for duplex reading, can collate discharged paper sheets, and has improved reading efficiency.
- an image reading apparatus having an auto document feeder which conveys paper and a scanning module which reads an image from the paper conveyed by the auto document feeder, the auto document feeder comprising: a simplex path, which is a conveying path in a simplex reading mode; a duplex path, which is distinguishable from the simplex path, along which a plurality of sheets of papers is conveyed at different positions in a duplex reading mode; and a path selecting element which opens the simplex path in the simplex reading mode, and opens the duplex path in the duplex reading mode.
- the path selecting element comprises a paper guide which is selectively pivoted to a first position for opening the simplex path and a second position for opening the duplex path.
- the simplex path comprises a pick-up unit which picks up the paper and a scanning path on which the scanning module is located
- the duplex path comprises the scanning path, a bypass path which is branched off from the scanning path in upstream of the scanning module, and in which a storage temporarily storing the picked up paper is located, a connecting path which returns the paper in the storage towards upstream of the scanning module, and a returning path which re-conveys the paper, of which one side is read while the paper passes the scanning module, towards a point upstream of the scanning module.
- the bypass path and the connecting path convey the paper independently from the scanning path and the returning path.
- a time point where a rear end of a first paper reaches the scanning module after passing along the returning path is synchronized with a time point where a front end of a second paper stored in the storage reaches the scanning module following the rear end of the first paper.
- the first side of the paper is read in the simplex reading mode, and in the duplex reading mode, the second side of the paper is first read while the paper passes the scanning module from the connecting path, and the first side is read while the paper re-passes the scanning module from the returning path.
- the auto document feeder further comprises a stack roller which rotates in a first direction to store the picked up paper to the storage, and rotates in a second direction to convey the paper stored in the storage towards the connecting path.
- the auto document feeder further comprises: a discharging tray whereon the paper discharged out of the auto document feeder is stored; and a discharging roller which rotates in a first direction to discharge the paper to the discharging tray after the paper passes the scanning module, and rotates in a second direction to convey the paper discharged out of the discharging tray towards the returning path.
- a conveying path starting from the discharging roller to the scanning module via the returning path is shorter than a conveying path starting from the pick-up unit to the scanning module.
- the pick-up unit comprises: a pick-up belt to pick up the paper; first and second pick-up rollers which allow the pick-up belt to travel, and support both ends of the pick-up belts; and an arranging unit which arranges the front end of the picked up paper.
- the auto document feeder further comprises first and second feed rollers which are respectively located in upstream and downstream of the scanning module, and convey the paper.
- the auto document feeder further comprises a returning roller which conveys the paper from the returning path towards the scanning path.
- an image reading apparatus having an auto document feeder which conveys paper and a scanning module which reads image on the paper conveyed by the auto document feeder, the auto document feeder comprising: a scanning path on which a pick-up unit picking up the paper and the scanning module are located; a bypass path which is branched off from the scanning path in upstream of the scanning module, and in which a storage temporarily storing the picked up paper is located, a path selecting element which opens the bypass path in the duplex reading mode; and first and second flipping elements which are respectively located at the bypass path and downstream of the scanning module, and flip the paper in the duplex reading mode, wherein, the first side of the paper is read in the simplex reading mode, and in the duplex reading mode, the paper is flipped by the first flipping element to read first the second side, and then the paper is re-flipped by the second flipping element to read the first side.
- the path selecting element comprises a paper guide which pivots to open and close the bypass path.
- the first flipping element comprises: a stack roller which rotates in a first direction to store the picked up paper in the storage, and rotates in a second direction to convey the paper stored in the storage towards the connecting path; and a connecting path along which the paper is returned from the storage upstream of the scanning module, wherein the rear end of the paper reaching the stack roller becomes the front end of the paper moving towards the connecting path.
- the second flipping element comprises: a discharging tray whereon the paper discharged out of the auto document feeder is loaded; a returning path which re-conveys the paper, of which one side is read while the paper passes the scanning module, towards upstream of the scanning module; and a discharging roller which rotates in a first direction to discharge the paper to the discharging tray after the paper passes the scanning module, and rotates in a second direction to convey the paper discharged out of the discharging tray towards the returning path, wherein the rear end of the paper reaching the stack roller becomes the front end of the paper moving towards the returning path.
- the bypass path and the connecting path convey the paper independently from the scanning path and the returning path.
- a time point where a rear end of a first paper reaches the scanning module after passing along the returning path is synchronized with a time point where a front end of a second paper stored in the storage reaches the scanning module following the rear end of the first paper.
- a conveying path starting from the discharging roller to the scanning module via the returning path is shorter than a conveying path starting from the pick-up unit to the scanning module.
- FIG. 1 is a side cross-sectional view of a conventional auto document feeder
- FIG. 2 is a side cross-sectional view illustrating a main part of an image reading apparatus according to an embodiment of the present invention
- FIG. 3 is a perspective view of the image reading apparatus of FIG. 2 ;
- FIG. 4 is a side cross-sectional view of the image forming apparatus of FIG. 3 , illustrating a simplex path of an auto document feeder according to an embodiment of the present invention
- FIG. 5 is a side cross-sectional view of the image forming apparatus of FIG. 3 , illustrating a duplex path of an auto document feeder according to an embodiment of the present invention
- FIG. 6 is a side cross-sectional view the image forming apparatus of FIG. 3 , illustrating a first paper and a second paper which are conveyed independently from each other along a duplex path according to an embodiment of the present invention.
- FIG. 7 is a side cross-sectional view the image forming apparatus of FIG. 3 , illustrating the positions of a rear end of a first paper and a front end of a second paper, which are synchronized with each other along a duplex path according to an embodiment of the present invention.
- FIG. 2 is a side cross-sectional view of an image reading apparatus according to an embodiment of the present invention.
- FIG. 3 is a perspective view of the image reading apparatus of FIG. 2 .
- the image reading apparatus has both functions of scanning and printing.
- the image reading apparatus includes a printing unit 100 and a scanning unit 99 .
- the printing unit 100 prints an image in an electrophotographic manner.
- the shown scanning unit 99 includes an auto document feeder 10 , and is of a hybrid type that combines a flat-bed type and a sheet-feed type. While shown as a multi-function printer by way of example, it is understood that the present invention is not limited to a multi-function printer, and can include facsimile, copying functions instead of or in addition to the printing function. Additionally, it is understood that the scanning unit 99 need not also include a flat-bed type scanner.
- the printing unit 100 includes a light scanning unit 180 , a developing cartridge 140 , a fixing unit 160 , and a cassette feeder 110 .
- the x-axis direction is a sub-scanning direction in which a recording medium P and a paper S are discharged.
- the y-axis direction is a main-scanning direction that is perpendicular to the sub-scanning direction.
- the printing unit 100 may print the image in an ink-jet manner or a dye diffusion thermal transfer manner. Additionally, it is understood that other printing units can be used which impart images using other techniques.
- the light scanning unit 180 irradiates light corresponding to image information onto a photoconductor 142 to form an electrostatic latent image on the surface of the photoconductor 142 .
- the developing cartridge 140 is located in a detachable manner in a main frame 101 of the image reading apparatus.
- the shown developing cartridge 140 includes a charging roller 141 , the photoconductor 142 , a developing roller 143 , a supply roller 144 , a stirrer 145 , and a toner storage 146 .
- the toner storage 146 stores toner.
- the developing cartridge 140 is replaced when the toner stored in the toner storage 146 is exhausted.
- the developing cartridge 140 is placed in the main frame 101 of the image reading apparatus when a handle 147 is pushed in a negative x-axis direction, and is separated from the main frame 101 of the image reading apparatus when the handle 147 is pulled in a positive x-axis direction.
- the developing cartridge 140 can be otherwise constructed and need not be removable in all aspects of the invention.
- the photoconductor 142 rotates in a predetermined direction, with a portion of the surface of the photoconductor 142 being exposed.
- a photoconductive material is coated on the surface of the cylindrical drum by deposition or an equivalent method.
- the photoconductor 142 is charged to a predetermined electric potential by the charging roller 141 .
- An electrostatic latent image corresponding to an image to be printed is formed on the surface of the photoconductor 142 using the light irradiated from the light scanning unit 180 .
- the developing roller 143 has powder type toner on its surface, and attaches the toner onto the electrostatic latent image formed on the photoconductor 142 to be developed into a toner image.
- a developing bias voltage is applied to the developing roller 143 to supply the toner to the photoconductor 142 .
- the surfaces of the developing roller 143 and the photoconductor 142 come in contact with each other to form a developing nip, or the surfaces thereof are separated from each other to form a developing gap.
- the developing nip or the developing gap has to be uniformly formed to have a specific size along the axis of the developing roller 143 and the photoconductor 142 . Developing is carried out while the toner moves through the developing gap or the developing nip.
- the supply roller 144 supplies toner so that the toner is attached onto the developing roller 143 .
- the stirrer 145 stirs the toner to prevent the toner stored in the toner storages 146 from hardening, and conveys the toner towards the supply roller 144 .
- a transfer roller 150 faces the surface of the photoconductor 142 .
- a transfer bias voltage having an opposite polarity with respect to the toner image is applied so that the toner image developed on the photoconductor 142 is transferred onto the recording medium P.
- the toner image is moved to the recording medium P by an electrostatic force or a mechanical contact pressure between the photoconductor 142 and the transfer roller 150 .
- the fixing unit 160 includes a heat roller (not labelled) and a pressure roller (not labelled) facing the heat roller.
- the fixing unit 160 fixes the toner image onto the recording medium P by applying heat and pressure on the toner image transferred onto the recording medium P.
- a discharging roller 170 discharges the recording medium P out of the printing unit 100 after the fixing is completed.
- the recording medium P discharged out of the printing unit 100 is loaded on a discharging tray 300 .
- the tray 300 and/or cartridge 110 need not be used in all aspects of the invention.
- the recording medium P is conveyed as follows.
- the printing unit 100 includes the cassette feeder 110 storing the recording medium P.
- the pick-up roller 120 picks up the recording medium P stored in the cassette feeder 110 sheet-by-sheet.
- the feed roller 130 conveys the picked up recording medium P towards the developing cartridge 140 .
- the recording medium P passes between the photoconductor 142 and the transfer roller 150 , and the toner image is transferred onto the recording medium P. Thereafter, the recording medium P is fixed by heat and pressure applied from the fixing unit 160 . After fixing is completed, the recording medium P is discharged to the discharging tray 300 by the discharging roller 170 .
- the scanning unit 99 includes a scanning module 90 which reads the image printed on paper by irradiating light thereto, first and second glass plate plates 50 and 51 on which the paper is placed, and an auto document feeder (ADF) 10 which feeds the paper automatically.
- the x-axis direction is a sub-scanning direction in which the scanning module 90 reads the image and moves.
- a y-axis direction is a main-scanning direction in which the scanning module 90 reads the image on paper at one time.
- the plates 50 , 51 are shown as being in plane defined by the x and y-axes.
- the first glass plate 50 comes in contact with the paper conveyed by the ADF 10 and the second glass plate 51 comes in contact with the unmoving paper.
- the first glass plate 50 and the second glass plate 51 are separated from each other
- a paper guiding member 70 is disposed between the first glass plate 50 and the second glass plate 51 .
- the paper guiding member 70 has a tilted surface. The tilt of the paper guiding member 70 guides the front end of the paper passing the first glass plate 50 to the discharging tray 30 .
- a display panel 40 displays operation states of the printing unit 100 and the scanning unit 99 , and includes various operation keys. While not required in all aspects, the discharging tray 30 can be the discharging tray 300 used by the printing unit 100 .
- the paper loaded on a feeding tray 20 is conveyed to the first glass plate 50 by the ADF 10 .
- the scanning module 90 is located at the rear side of the first glass plate 50 , and reads the image recorded on the paper. Then, the paper is discharged to the discharging tray 30 .
- the paper When used as a flat-bed scanner, the paper is supplied sheet-by-sheet without using the ADF 10 , and is placed on the upper side of the second glass plate 51 .
- the scanning module 90 is conveyed in the sub-scanning direction along the x-axis at the rear side of the second glass plate 51 , and reads the image on the unmoving paper on the plate 51 .
- the scanning module 90 reads the image on the paper supplied to the ADF 10 when the scanning module 90 is positioned at the rear side of the first glass plate 50 , and reads the image on the unmoving paper when the scanning module 90 is positioned at the rear side of the second glass plate 51 by moving along the sub-scanning direction relative to the plate 51 .
- the scanning unit 99 is not limited to the above description, and may have various structures.
- FIG. 4 is a side cross-sectional view of the image forming apparatus of FIG. 3 , illustrating a simplex path of the ADF 10 according to an embodiment of the present invention.
- FIG. 5 is a side cross-sectional view of the image forming apparatus of FIG. 3 , illustrating a duplex path of the ADF 10 according to an embodiment of the present invention.
- the main frame 101 of the image reading apparatus, the ADF 10 , the scanning module 90 , and the first and second glass plates 50 and 51 are shown.
- the ADF 10 has a simplex path and a duplex path, which are distinguishable from each other.
- the simplex path includes a scanning path.
- a pick-up unit 401 and the scanning module 90 are provided on the scanning path.
- the pick-up unit 401 picks up the papers S 1 and S 2 loaded on the feeding tray 20 sheet-by-sheet, and conveys the papers S 1 and S 2 towards the scanning module 90 .
- the shown pick-up unit 401 includes a pick-up belt 403 , first and second pick-up rollers 402 and 404 , and an arranging unit 406 .
- the first and second pick-up rollers 402 and 404 support both ends of the pick-up belt 403 , and provide a rotation force to the pick-up belt 403 .
- the front ends of the papers S 1 and S 2 are aligned by the arranging unit 406 , after the papers S 1 and S 2 are picked up sheet-by-sheet while the papers S 1 and S 2 come in contact with the surface of the pick-up belt 403 travelling along an infinite path.
- the pick-up unit 401 can be otherwise constructed, such as the pick-up roller 82 in FIG. 1 .
- the scanning module 90 faces an adhering member 460 , and is located at the rear side of the first glass plate 50 .
- the scanning module 90 reads the image on the papers S 1 and S 2 according to an intensity difference of lights reflected from the papers S 1 and S 2 .
- the greater the intensity of light reflected from the papers S 1 and S 2 the whiter the image that is read from the scanning module 90 .
- the adhering member 460 is used.
- the adhering member 460 is elastically biased by an additionally provided elastic member 469 , is able to reflect light easily due to its white surface, and presses the papers S 1 and S 2 to be adhered to the first glass plate 50 .
- first feed roller 408 is provided upstream of the scanning module 90 to convey the papers S 1 and S 2 towards the scanning module 90
- second feed roller 410 is provided downstream of the scanning module 90 to convey the papers S 1 and S 2 towards a discharging roller 412 after the papers S 1 and S 2 pass the scanning module 90 .
- the papers S 1 and S 2 are stably conveyed by the first and second feed rollers 408 and 410 .
- the scanning path is defined as a conveying path of the papers S 1 and S 2 along the pick-up unit 401 , the arranging unit 406 , the paper guide 450 , the first feed roller 408 , the adhering member 460 , the second feed roller 410 , and the discharging roller 412 .
- a path selecting element opens the simplex path in the simplex reading mode, and opens the duplex path in the duplex reading mode.
- the path selecting element includes the paper guide 450 .
- the paper guide 450 pivots about a hinge 450 , and is selectively located at a first or second position.
- the paper guide 450 pivots towards the first position (see FIG. 4 ) for opening the simplex path in the simplex reading mode, and pivots towards the second position (see FIG. 5 ) for opening the duplex path in the duplex reading mode.
- the paper guide 450 opens a bypass path 510 in the duplex reading mode.
- the path selecting element can be a manual lever and/or an element actuated when duplex scanning is selected.
- the duplex path of FIG. 5 is distinguishable from the simplex path of FIG. 4 , and includes conveying paths of the papers S 1 and S 2 in the duplex reading mode.
- the duplex path includes the scanning path, the bypass path 510 , a connecting path 530 , and a returning path 540 .
- the scanning path is described above.
- the bypass path 510 is branched off from the scanning path at a branch point 407 located upstream of the scanning module 90 .
- the bypass path 510 includes a storage area 520 , which temporarily stores the papers S 1 and S 2 picked up by the pick-up unit 401 , and a stack roller 416 .
- the stack roller 416 rotates in a first direction to store the papers S 1 and S 2 picked up by the pick-up unit 401 in the storage area 520 .
- the stack roller 416 rotates in a second direction to convey the papers S 1 and S 2 stored in the storage area 520 towards the connecting path 530 .
- the bypass path 510 is defined as a conveying path along a front end 451 of the paper guide 450 , a side of the paper guide 450 , the stack roller 416 , and the storage area 520 .
- the connecting path 530 links the scanning path and the bypass path 510 , and returns the papers S 1 and S 2 stored in the storage area 520 to a point in the scanning path upstream of the scanning module 90 .
- the connecting path 530 is defined as a conveying path of the papers S 1 and S 2 along an exit side of the stack roller 416 , a rear side 459 of the paper guider 450 , and an entry side of the first feed roller 408 .
- the returning path 540 returns the papers S 1 and S 2 to a point of the scanning path upstream of the scanning module 90 again, after the first sides P 1 of the papers S 1 and S 2 are read while passing the scanning module 90 , to prepare for reading the second sides P 2 thereof.
- a returning roller 414 is provided on the returning path 540 .
- the returning roller 414 conveys the papers S 1 and S 2 , which are conveyed from the discharging roller 412 , towards the upstream of the scanning module 90 .
- the returning path 540 is defined as a conveying path of the papers S 1 and S 2 along the reversely rotating discharging roller 412 , the returning roller 414 , and a connecting portion between the returning path 540 and the scanning path.
- the duplex path of shown embodiment shown in FIG. 5 can convey a plurality of sheets of papers S 1 and S 2 at different positions, thereby significantly improving duplex reading efficiency.
- the second side P 2 of the first paper S 1 is read while the first paper S 1 passes along the feeding tray 20 , the pick-up unit 401 , the arranging unit 406 , the front end 451 of the paper guide 450 , the side of the paper guide 450 , the rotating stack roller 416 , the storage area 520 , the reversely rotating stack roller 416 , the connecting path 530 , the first feed roller 408 , the scanning module 90 , the second feed roller 410 , and the rotating discharging roller 412 .
- a front end LE 1 (see FIG. 6 ) of the first paper S 1 is located at the discharging tray 30 , and a rear end TE 1 (see FIG. 6 ) of the first paper S 1 is held at the discharging roller 412 . Thereafter, while the discharging roller 412 rotates reversely, the rear end TE 1 of the first paper S 1 held at the discharging roller 412 becomes the front end LE 1 of the first paper S 1 entering into the returning path 540 . The first paper S 1 re-enters the scanning path by the reversely rotating discharging roller 412 and the returning roller 414 .
- the first paper S 1 passes the first feed roller 408 , the scanning module 90 , the second feed roller 410 , and the rotating discharging roller 412 , thereby completing reading of the first side P 1 .
- the first paper S 1 is discharged out of the ADF 10 , and is loaded on the discharging tray 30 .
- FIG. 6 is a side cross-sectional view of the image forming apparatus of FIG. 3 , illustrating the first paper S 1 and the second paper S 2 which are conveyed independently from each other along the duplex path according to an embodiment of the present invention.
- the papers S 1 and S 2 are conveyed along the bypass path 510 and the connecting path 530 in an independent manner with respect to the scanning path and the returning path 540 .
- the first paper S 1 passes along the scanning path and the returning path 540 to read the first side P 1 and the second side P 2
- the second paper S 2 enters into the bypass path 510 by the pick-up unit 401 and the rotating stack roller 416 , and is temporarily stored in the storage area 520 .
- the duplex reading efficiency is significantly improved.
- the paper jam should be prevented when the first and second papers S 1 and S 2 are overlapped.
- the second paper S 2 is temporarily stored in the storage area 520 , and is conveyed towards the scanning module 90 at a later time when the paper S 2 is not overlapped with the first paper S 1 .
- the stack roller 416 rotates reversely, and the second paper S 2 temporarily stored in the storage 520 is conveyed to the connecting path 530 .
- FIG. 7 is a side cross-sectional view of the image forming apparatus of FIG. 3 , illustrating the positions of a rear end TE 1 of the first paper S 1 and a front end LE 2 of the second paper S 2 , which are synchronized with each other along the duplex path according to an embodiment of the present invention.
- a time point where the rear end TE 1 of the first paper S 1 reaches the scanning module 90 after passing along the returning path 540 may be synchronized with a time point where the front end LE 2 of the second paper S 2 stored in the storage area 520 reaches the scanning module 90 following the rear end TE 1 of the first paper S 1 .
- a first time point where the rear end TE 1 of the first paper S 1 passes the first feed roller 408 after passing the returning path 540 may practically coincide with a second time point where the front end LE 2 of the second paper S 2 reaches the first feed roller 408 after passing the connecting path 530 .
- the first and second time points are synchronized with each other with a time delay that is enough to prevent the first and second papers S 1 and S 2 from jamming. Accordingly, the separation distance between the first and second papers S 1 and S 2 are minimized, while preventing the first and second papers S 1 and S 2 from being jammed, thereby significantly improving the duplex reading efficiency.
- the conventional ADF 10 re-conveys the papers S 1 and S 2 along the discharging roller 88 , the returning roller 83 , the first feed roller 84 , the scanning module 86 , the second feed roller 87 , and the discharging roller 88 , in this order, only to collate the papers S 1 and S 2 .
- the scanning module 86 does not operate. Such conveying path sharply decreases the duplex reading efficiency.
- aspects the present invention solve the above-mentioned problems by providing first and second flipping elements.
- the simplex reading mode the first sides P 1 of the papers S 1 and S 2 are read, and the second sides P 2 thereof are not read.
- the papers S 1 and S 2 do not pass the bypass path 510 and the returning path 540 .
- the stack roller 416 provided in the bypass path 510 does not operate. While rotating in a specific direction, the discharging roller 412 only discharges the papers S 1 and S 2 to the discharging tray 30 .
- the first and second flipping elements operate in the duplex reading mode, and allow the second sides P 2 of the papers S 1 and S 2 to be read first, before the first sides P 1 thereof are read. By doing so, the papers S 1 and S 2 are not necessarily re-conveyed only to collate papers S 1 and S 2 as in the conventional case.
- the papers S 1 and S 2 are loaded on the feeding tray 20 with the first side S 1 of the first paper P 1 facing the feeding tray 20 and the second side P 2 of the first paper S 1 -, facing the first side P 1 of the second paper S 2 loaded on top of the paper S 1 , are loaded on the discharging tray 30 with the second side P 2 of the second paper S 2 facing the discharging tray 30 and the first side S 1 of the second paper S 2 facing the second side P 2 of the first paper S 1 loaded on top of the first paper S 1 .
- the flipping elements are upstream and downstream of the scanning module 90 , respectively.
- the first flipping element is located on the bypass path 510 which is upstream of the scanning module 90 , and flips the papers S 1 and S 2 before the papers S 1 and S 2 reach the scanning module 90 , to read the second side P 2 first.
- the second flipping element is located downstream of the scanning module 90 , and re-flips the papers S 1 and S 2 after the papers S 1 and S 2 pass the scanning module 90 , to read the first side P 1 .
- the first flipping element includes the stack roller 416 that is rotatable in both directions, the connecting path 530 , and the storage 520 .
- the stack roller 416 rotates in a first direction to temporarily store the papers S 1 and S 2 in the storage 520 , a front end LE of the papers S 1 and S 2 which reaches the stack roller 416 is positioned at the storage 520 , and a rear end TE thereof is held at the stack roller 416 .
- the stack roller 416 rotates reversely in a second direction to return the papers S 1 and S 2 upstream of the scanning module 90 , the rear end TE of the papers S 1 and S 2 reaching the stack roller 416 becomes the front end LE of the papers S 1 and S 2 moving towards the connecting path 530 .
- the second flipping element includes the discharging roller 412 rotatable in both directions, the returning path 540 , and the discharging tray 30 .
- the discharging roller 412 rotates in a first direction to discharge the papers S 1 and S 2 of which second side P 2 is first read, the first end LE of the papers S 1 and S 2 reaching the discharging roller 412 is positioned at the discharging tray 30 , and the rear end TE thereof is held at the discharging roller 412 .
- sensors which are located at the entry sides and the exit sides of each roller and detect whether the papers S 1 and S 2 are conveyed, are indicated by an alphabet letter in a triangle.
- the simplex path is indicated by the sequence a-b-c-d-e-f-g
- the duplex path is indicated by the sequence a-b-k-l-m-d-e-f-i-j-c-d-e-f-g.
- Duplex reading efficiency will now be roughly estimated except for the papers S 1 and S 2 which are fed first and last.
- the front end LE 2 of the second paper S 2 may be synchronized to pass point m.
- the front end LE 2 of the second paper S 2 stored in the storage 520 is conveyed to point d, and follows the same conveying path.
- the simplex path a-b-c-d-e-f-g and the duplex path of d-e-f-g-f-i-j-c-d have the same length. Then, a time for discharging a sheet of the papers S 1 and S 2 in the simplex reading mode is almost the same to a time for discharging a sheet of the papers S 1 and S 2 in the duplex reading mode. In practice, considering the conveying distance of the first and last papers S 1 and S 2 and the separation distance between the papers S 1 and S 2 , the duplex reading efficiency is about 80%.
- the length of the conveying path from the discharging roller 412 to the scanning module 90 via the returning path 540 is preferably shorter than the length of the conveying path from the pick-up unit 401 to the scanning module 90 .
- a duplex path which is distinguishable from a simplex path, and can convey a plurality of sheets of paper at different positions, thereby improving reading efficiency.
- the simplex path and the duplex path can be swiftly and correctly selected by a path selecting element having a simple structure.
- the plurality of sheets of paper are adjacent each other by reducing a separation distance between the paper sheets, thereby shortening a returning path length.
- a second side of paper is read first by a flipping element, and thus the papers of which both sides are read are collated and discharged, thereby significantly improving duplex reading efficiency.
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Abstract
Description
Claims (21)
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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KR2006-11242 | 2006-02-06 | ||
KR1020060011242A KR100739793B1 (en) | 2006-02-06 | 2006-02-06 | Image Reader with Automatic Paper Feeder |
KR10-2006-0011242 | 2006-02-06 |
Publications (2)
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US20070183004A1 US20070183004A1 (en) | 2007-08-09 |
US8730539B2 true US8730539B2 (en) | 2014-05-20 |
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US11/643,987 Active 2032-02-12 US8730539B2 (en) | 2006-02-06 | 2006-12-22 | Image reading apparatus having auto document feeder |
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US (1) | US8730539B2 (en) |
KR (1) | KR100739793B1 (en) |
CN (1) | CN101018273B (en) |
Families Citing this family (14)
Publication number | Priority date | Publication date | Assignee | Title |
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CN101150643B (en) * | 2006-09-20 | 2010-11-03 | 佳能株式会社 | Image reading apparatus |
JP4818038B2 (en) * | 2006-09-25 | 2011-11-16 | キヤノン株式会社 | Image reading device |
JP4893255B2 (en) * | 2006-11-15 | 2012-03-07 | ブラザー工業株式会社 | Sheet transport device |
KR101116614B1 (en) * | 2007-03-19 | 2012-03-08 | 삼성전자주식회사 | Image scanning apparatus and Method for scanning image using the same |
US20080265501A1 (en) * | 2007-04-26 | 2008-10-30 | Foote Wayne E | Preflipping sheets for a duplex operation |
JP2008306295A (en) * | 2007-06-05 | 2008-12-18 | Canon Inc | Image reader, and image forming apparatus |
DE602008002867D1 (en) * | 2007-08-09 | 2010-11-18 | Oki Data Kk | An image reading apparatus, an image forming apparatus, an image reading apparatus with an image reading apparatus and an image forming apparatus |
JP5020018B2 (en) * | 2007-10-02 | 2012-09-05 | 京セラドキュメントソリューションズ株式会社 | Document feeder |
JP5510636B2 (en) * | 2009-10-20 | 2014-06-04 | セイコーエプソン株式会社 | Material transport apparatus and image processing apparatus |
JP2011105468A (en) * | 2009-11-18 | 2011-06-02 | Seiko Epson Corp | Conveyed material carrying device and image processing device |
JP5480114B2 (en) * | 2010-11-29 | 2014-04-23 | 株式会社ミヤコシ | Ink jet recording apparatus and ink jet recording method using the same |
JP5881642B2 (en) * | 2013-05-24 | 2016-03-09 | 京セラドキュメントソリューションズ株式会社 | Image reading apparatus and image forming apparatus having the same |
US10298793B2 (en) * | 2016-01-25 | 2019-05-21 | Hewlett-Packard Development Company, L.P. | Imaging devices with drive assembly and drive assembly locking mechanism |
JP7428038B2 (en) * | 2020-03-25 | 2024-02-06 | セイコーエプソン株式会社 | reading device |
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Also Published As
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CN101018273B (en) | 2010-10-20 |
CN101018273A (en) | 2007-08-15 |
US20070183004A1 (en) | 2007-08-09 |
KR100739793B1 (en) | 2007-07-13 |
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